Multiscale interaction between a large scale magnetic island and small scale turbulence
Abstract
Multiscale interaction between the magnetic island and turbulence has been demonstrated through simultaneous two-dimensional measurements of turbulence and temperature and flow profiles. The magnetic island and turbulence mutually interact via the coupling between the electron temperature () gradient, the turbulence, and the poloidal flow. The gradient altered by the magnetic island is peaked outside and flattened inside the island. The turbulence can appear in the increased gradient regions. The combined effects of the gradient and the the poloidal flow shear determine two-dimensional distribution of the turbulence. When the reversed poloidal flow forms, it can maintain the steepest gradient and the magnetic island acts more like a electron heat transport barrier. Interestingly, when the gradient, the turbulence, and the flow shear increase beyond critical levels, the magnetic island turns into a fast electron heat transport channel, which directly leads to the minor disruption.
Cite
@article{arxiv.1705.09487,
title = {Multiscale interaction between a large scale magnetic island and small scale turbulence},
author = {M. J. Choi and J. Kim and J. -M. Kwon and H. K. Park and Y. In and W. Lee and K. D. Lee and G. S. Yun and J. Lee and M. Kim and W. -H. Ko and J. H. Lee and Y. S. Park and Y. -S. Na and N. C. Luhmann and B. H. Park},
journal= {arXiv preprint arXiv:1705.09487},
year = {2017}
}
Comments
15 pages, 6 figures